Cargando…

Archaeal DNA Polymerase-B as a DNA Template Guardian: Links between Polymerases and Base/Alternative Excision Repair Enzymes in Handling the Deaminated Bases Uracil and Hypoxanthine

In Archaea repair of uracil and hypoxanthine, which arise by deamination of cytosine and adenine, respectively, is initiated by three enzymes: Uracil-DNA-glycosylase (UDG, which recognises uracil); Endonuclease V (EndoV, which recognises hypoxanthine); and Endonuclease Q (EndoQ), (which recognises b...

Descripción completa

Detalles Bibliográficos
Autores principales: Abellón-Ruiz, Javier, Ishino, Sonoko, Ishino, Yoshizumi, Connolly, Bernard A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi Publishing Corporation 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5045986/
https://www.ncbi.nlm.nih.gov/pubmed/27721668
http://dx.doi.org/10.1155/2016/1510938
_version_ 1782457208689131520
author Abellón-Ruiz, Javier
Ishino, Sonoko
Ishino, Yoshizumi
Connolly, Bernard A.
author_facet Abellón-Ruiz, Javier
Ishino, Sonoko
Ishino, Yoshizumi
Connolly, Bernard A.
author_sort Abellón-Ruiz, Javier
collection PubMed
description In Archaea repair of uracil and hypoxanthine, which arise by deamination of cytosine and adenine, respectively, is initiated by three enzymes: Uracil-DNA-glycosylase (UDG, which recognises uracil); Endonuclease V (EndoV, which recognises hypoxanthine); and Endonuclease Q (EndoQ), (which recognises both uracil and hypoxanthine). Two archaeal DNA polymerases, Pol-B and Pol-D, are inhibited by deaminated bases in template strands, a feature unique to this domain. Thus the three repair enzymes and the two polymerases show overlapping specificity for uracil and hypoxanthine. Here it is demonstrated that binding of Pol-D to primer-templates containing deaminated bases inhibits the activity of UDG, EndoV, and EndoQ. Similarly Pol-B almost completely turns off EndoQ, extending earlier work that demonstrated that Pol-B reduces catalysis by UDG and EndoV. Pol-B was observed to be a more potent inhibitor of the enzymes compared to Pol-D. Although Pol-D is directly inhibited by template strand uracil, the presence of Pol-B further suppresses any residual activity of Pol-D, to near-zero levels. The results are compatible with Pol-D acting as the replicative polymerase and Pol-B functioning primarily as a guardian preventing deaminated base-induced DNA mutations.
format Online
Article
Text
id pubmed-5045986
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher Hindawi Publishing Corporation
record_format MEDLINE/PubMed
spelling pubmed-50459862016-10-09 Archaeal DNA Polymerase-B as a DNA Template Guardian: Links between Polymerases and Base/Alternative Excision Repair Enzymes in Handling the Deaminated Bases Uracil and Hypoxanthine Abellón-Ruiz, Javier Ishino, Sonoko Ishino, Yoshizumi Connolly, Bernard A. Archaea Research Article In Archaea repair of uracil and hypoxanthine, which arise by deamination of cytosine and adenine, respectively, is initiated by three enzymes: Uracil-DNA-glycosylase (UDG, which recognises uracil); Endonuclease V (EndoV, which recognises hypoxanthine); and Endonuclease Q (EndoQ), (which recognises both uracil and hypoxanthine). Two archaeal DNA polymerases, Pol-B and Pol-D, are inhibited by deaminated bases in template strands, a feature unique to this domain. Thus the three repair enzymes and the two polymerases show overlapping specificity for uracil and hypoxanthine. Here it is demonstrated that binding of Pol-D to primer-templates containing deaminated bases inhibits the activity of UDG, EndoV, and EndoQ. Similarly Pol-B almost completely turns off EndoQ, extending earlier work that demonstrated that Pol-B reduces catalysis by UDG and EndoV. Pol-B was observed to be a more potent inhibitor of the enzymes compared to Pol-D. Although Pol-D is directly inhibited by template strand uracil, the presence of Pol-B further suppresses any residual activity of Pol-D, to near-zero levels. The results are compatible with Pol-D acting as the replicative polymerase and Pol-B functioning primarily as a guardian preventing deaminated base-induced DNA mutations. Hindawi Publishing Corporation 2016-09-19 /pmc/articles/PMC5045986/ /pubmed/27721668 http://dx.doi.org/10.1155/2016/1510938 Text en Copyright © 2016 Javier Abellón-Ruiz et al. https://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Abellón-Ruiz, Javier
Ishino, Sonoko
Ishino, Yoshizumi
Connolly, Bernard A.
Archaeal DNA Polymerase-B as a DNA Template Guardian: Links between Polymerases and Base/Alternative Excision Repair Enzymes in Handling the Deaminated Bases Uracil and Hypoxanthine
title Archaeal DNA Polymerase-B as a DNA Template Guardian: Links between Polymerases and Base/Alternative Excision Repair Enzymes in Handling the Deaminated Bases Uracil and Hypoxanthine
title_full Archaeal DNA Polymerase-B as a DNA Template Guardian: Links between Polymerases and Base/Alternative Excision Repair Enzymes in Handling the Deaminated Bases Uracil and Hypoxanthine
title_fullStr Archaeal DNA Polymerase-B as a DNA Template Guardian: Links between Polymerases and Base/Alternative Excision Repair Enzymes in Handling the Deaminated Bases Uracil and Hypoxanthine
title_full_unstemmed Archaeal DNA Polymerase-B as a DNA Template Guardian: Links between Polymerases and Base/Alternative Excision Repair Enzymes in Handling the Deaminated Bases Uracil and Hypoxanthine
title_short Archaeal DNA Polymerase-B as a DNA Template Guardian: Links between Polymerases and Base/Alternative Excision Repair Enzymes in Handling the Deaminated Bases Uracil and Hypoxanthine
title_sort archaeal dna polymerase-b as a dna template guardian: links between polymerases and base/alternative excision repair enzymes in handling the deaminated bases uracil and hypoxanthine
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5045986/
https://www.ncbi.nlm.nih.gov/pubmed/27721668
http://dx.doi.org/10.1155/2016/1510938
work_keys_str_mv AT abellonruizjavier archaealdnapolymerasebasadnatemplateguardianlinksbetweenpolymerasesandbasealternativeexcisionrepairenzymesinhandlingthedeaminatedbasesuracilandhypoxanthine
AT ishinosonoko archaealdnapolymerasebasadnatemplateguardianlinksbetweenpolymerasesandbasealternativeexcisionrepairenzymesinhandlingthedeaminatedbasesuracilandhypoxanthine
AT ishinoyoshizumi archaealdnapolymerasebasadnatemplateguardianlinksbetweenpolymerasesandbasealternativeexcisionrepairenzymesinhandlingthedeaminatedbasesuracilandhypoxanthine
AT connollybernarda archaealdnapolymerasebasadnatemplateguardianlinksbetweenpolymerasesandbasealternativeexcisionrepairenzymesinhandlingthedeaminatedbasesuracilandhypoxanthine